Department of Energy Convergence and Climate Change, Kyungpook National University, Daegu 41566, Republic of Korea.
Department of Chemical Engineering, Kyungpook National University, Daegu 41566, Republic of Korea.
ACS Sens. 2024 Mar 22;9(3):1489-1498. doi: 10.1021/acssensors.3c02627. Epub 2024 Mar 5.
Detection of microplastics from water is crucial for various reasons, such as food safety monitoring, monitoring of the fate and transport of microplastics, and development of preventive measures for their occurrence. Currently, microplastics are detected by isolating them using filtration, separation by centrifugation, or membrane filtration, subsequently followed by analysis using well-established analytical methods, such as Raman spectroscopy. However, due to their variability in shape, color, size, and density, isolation using the conventional methods mentioned above is cumbersome and time-consuming. In this work, we show a surface-nanodroplet-decorated microfluidic device for isolation and analysis of small microplastics (diameter of 10 μm) from water. Surface nanodroplets are able to capture nearby microplastics as water flows through the microfluidic device. Using a model microplastic solution, we show that microplastics of various sizes and types can be captured and visualized by using optical and fluorescence microscopy. More importantly, as the surface nanodroplets are pinned on the microfluidic channel, the captured microplastics can also be analyzed using a Raman spectroscope, which enables both physical (i.e., size and shape) and chemical (i.e., type) characterization of microplastics at a single-particle level. The technique shown here can be used as a simple, fast, and economical detection method for small microplastics.
从水中检测微塑料至关重要,原因有多种,例如食品安全监测、微塑料的命运和迁移监测,以及开发预防其出现的措施。目前,微塑料是通过过滤、离心分离或膜过滤等方法进行分离,然后使用已建立的分析方法(如拉曼光谱)进行分析。然而,由于其形状、颜色、大小和密度的可变性,使用上述常规方法进行分离既繁琐又耗时。在这项工作中,我们展示了一种表面纳米液滴修饰的微流控装置,用于从水中分离和分析小尺寸的微塑料(直径为 10μm)。当水流经微流控装置时,表面纳米液滴能够捕获附近的微塑料。使用模型微塑料溶液,我们表明可以通过光学和荧光显微镜捕获和可视化各种尺寸和类型的微塑料。更重要的是,由于表面纳米液滴被固定在微流道上,捕获的微塑料也可以使用拉曼光谱仪进行分析,这使得微塑料在单个颗粒水平上的物理(即尺寸和形状)和化学(即类型)特征分析成为可能。这里展示的技术可以作为一种简单、快速和经济的小尺寸微塑料检测方法。